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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Calibrating Electrostatic Deflection of Charged Particle Sensors Using Ambient Plasma Measurements
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Calibrating Electrostatic Deflection of Charged Particle Sensors Using Ambient Plasma Measurements

机译:校准静电偏转的带电使用周围等离子体粒子传感器测量

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摘要

As space-based charged particle measurement pushes the technical envelope, resolution, both spatially and temporally, is ever improving. As such, the knowledge of the associated error must also improve. We present a method for correlating data collected from multiple sensors at different times in order to estimate the pointing error of each sensor. The method is demonstrated using flight data from the Dual Ion Spectrometer suite, part of the Fast Plasma Investigation on the NASA's Magnetospheric Multiscale mission. By looking at signals with sharp features in the direction of spacecraft spin, the relative error in look direction between sensors can be estimated with sub-degree precision, roughly 20 times better than the native resolution in the azimuthal (spin) direction. These sharp features appear in nature often enough that a sufficiently large sample size can be identified, using an automated filter of routine science data, to calibrate the system, or post correct measured data. The relative pointing error can then be trended over time to monitor the evolution/aging of the measurement system. These data inform calibration/correction methods, should the error grow to a point where science quality is adversely affected.
机译:随着太空测量带电粒子技术信封,决议,时空上,是改善。这样,知识必须相关的错误也得到改善。收集的数据来自多个传感器在不同*为了指向误差的估计每一个传感器。飞行数据的双离子谱仪套件,快速等离子调查的一部分美国宇航局的磁性层的多尺度的使命。看与尖锐特征信号宇宙飞船的方向旋转,相对误差传感器可以之间的研究方向与分度精度估计,大约20倍的原始分辨率方位(spin)方向。经常出现在自然足够使用一个大样本大小可以被识别常规科学数据的自动过滤校准系统,或发布正确的测量数据。随时间变化的趋势监控进化/老化的测量系统。校准/校正方法,该错误成长为科学质量不利影响。

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